Department of Bioengineering and University of California at Berkeley-University of California at San Francisco Graduate Program in Bioengineering, University of California, Berkeley, CA 94720, USA.
Proc Natl Acad Sci U S A. 2012 Dec 26;109(52):21450-5. doi: 10.1073/pnas.1207754110. Epub 2012 Dec 5.
Rapid, quantitative Western blotting is a long-sought bioanalytical goal in the life sciences. To this end, we describe a Western blotting assay conducted in a single glass microchannel under purely electronic control. The μWestern blot is comprised of multiple steps: sample enrichment, protein sizing, protein immobilization (blotting), and in situ antibody probing. To validate the microfluidic assay, we apply the μWestern blot to analyses of human sera (HIV immunoreactivity) and cell lysate (NFκB). Analytical performance advances are achieved, including: short durations of 10-60 min, multiplexed analyte detection, mass sensitivity at the femtogram level, high-sensitivity 50-pM detection limits, and quantitation capability over a 3.6-log dynamic range. Performance gains are attributed to favorable transport and reaction conditions on the microscale. The multistep assay design relies on a photopatternable (blue light) and photoreactive (UV light) polyacrylamide gel. This hydrophilic polymer constitutes both a separation matrix for protein sizing and, after brief UV exposure, a protein immobilization scaffold for subsequent antibody probing of immobilized protein bands. We observe protein capture efficiencies exceeding 75% under sizing conditions. This compact microfluidic design supports demonstration of a 48-plex μWestern blot in a standard microscope slide form factor. Taken together, the μWestern blot establishes a foundation for rapid, targeted proteomics by merging exceptional specificity with the throughput advantages of multiplexing, as is relevant to a broad range of biological inquiry.
快速、定量的 Western 印迹分析是生命科学中长期以来追求的生物分析目标。为此,我们描述了一种在单一玻璃微通道中进行的 Western 印迹分析,该分析完全由电子控制。μWestern 印迹分析由多个步骤组成:样品富集、蛋白质大小分析、蛋白质固定(印迹)和原位抗体探测。为了验证微流控分析,我们将 μWestern 印迹分析应用于人血清(HIV 免疫反应)和细胞裂解物(NFκB)的分析。该微流控分析具有许多优点,包括:分析时间短(10-60 分钟)、可同时分析多种分析物、具有纳克级的质量灵敏度、50-pM 的高灵敏度检测限以及在 3.6 个对数动态范围内的定量能力。这些性能的提高归因于微尺度上有利的传输和反应条件。多步分析设计依赖于可光聚合(蓝光)和光反应(紫外光)的聚丙烯酰胺凝胶。这种亲水性聚合物不仅构成了蛋白质大小分析的分离基质,而且在短暂的紫外光暴露后,还构成了蛋白质固定支架,用于随后探测固定化蛋白质条带的抗体。我们观察到在大小分析条件下蛋白质捕获效率超过 75%。这种紧凑的微流控设计支持在标准显微镜载玻片的形式因子中进行 48 重 μWestern 印迹分析。总的来说,μWestern 印迹分析通过将出色的特异性与多重化的高通量优势相结合,为快速、靶向蛋白质组学奠定了基础,这与广泛的生物学研究相关。